Off-shell vertices in heavy particle effective theories and B → Dπℓν
Abstract
We study the modifications to decay amplitudes in heavy to heavy semileptonic decays with multiple hadrons in the final state due to intermediate heavy hadrons being off-shell or having a finite width. Combining Heavy Hadron Chiral Perturbation Theory (HHχPT) with a BCFW on-shell factorization formula, we show that these effects induce (1/M) corrections to the standard results computed in the narrow-width approximation and therefore are important in extracting form factors from data. A combination of perturbative unitarity, analyticity, and reparameterization invariance fully determine these corrections in terms of known Isgur-Wise functions without the need to introduce new form factors. In doing so, we develop a novel technique to compute the boundary term at complex infinity in the BCFW formula for theories with derivatively coupled scalars. While we have used the B → Dπℓν decay as an example, these techniques can generally be applied to effective field theories with (multiple) distinct reference vectors.
Copyright and License
© 2025 The Authors.
This article is distributed under the terms of the Creative Commons Attribution License (CC-BY 4.0), which permits any use, distribution and reproduction in any medium, provided the original author(s) and source are credited.
Article funded by SCOAP3.
Acknowledgement
We thank Andreas Helset, Aneesh Manohar, Clifford Cheung, Dean Robinson, and Mark Wise for insightful discussions. The work of RP & MP is supported by the U.S. Department of Energy, Office of Science, Office of High Energy Physics, under Award No. DE-SC0011632 and by the Walter Burke Institute for Theoretical Physics. RP is supported by the Neutrino Theory Network under Award Number DEAC02-07CH11359.
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Additional details
- United States Department of Energy
- DE-SC0011632
- United States Department of Energy
- DE-AC02-07CH11359
- SCOAP3
- Accepted
-
2025-05-12
- Available
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2025-06-19Published
- Caltech groups
- Walter Burke Institute for Theoretical Physics, Division of Physics, Mathematics and Astronomy (PMA)
- Publication Status
- Published